4.7 Article

Reactive oxygen species upregulate expression of muscle atrophy-associated ubiquitin ligase Cbl-b in rat L6 skeletal muscle cells

期刊

AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY
卷 314, 期 6, 页码 C721-C731

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajpcell.00184.2017

关键词

Egr; rat L6 cells; ROS; ubiquitin ligase Cbl-b; unloading-mediated muscle atrophy

资金

  1. Japan Aerospace Exploration Agency
  2. Japan Space Forum
  3. Ministry of Education, Culture, Sports, Science, and Technology of Japan [15H04960, 16H01645]
  4. Japanese Council for Science, Technology, and Innovation Program Technologies for Creating Next-Generation Agriculture, Forestry and Fisheries (funding agency: Bio-Oriented Technology Research Advancement Institution) [14533567]
  5. Grants-in-Aid for Scientific Research [26000014, 15H05935, 15H05937, 16H01645, 15J40096, 15K09585, 15H04960] Funding Source: KAKEN

向作者/读者索取更多资源

Unloading-mediated muscle atrophy is associated with increased reactive oxygen species (ROS) production. We previously demonstrated that elevated ubiquitin ligase casitas B-lineage lymphoma-b (Cbl-b) resulted in the loss of muscle volume (Nakao R, Hirasaka K, Goto I, Ishidoh K, Yamada C, Ohno A, Okumura Y. Nonaka I, Yasutomo K, Baldwin KM. Kominami H. Higashibata A, Nagano K, Tanaka K. Yasui N, Mills EM, Takeda S. Nikawa T. Mol Cell Biol 29: 4798-4811, 2009). However, the pathological role of ROS production associated with unloading-mediated muscle atrophy still remains unknown. Here, we showed that the ROS-mediated signal transduction caused by microgravity or its simulation contributes to Cbl-b expression. In L6 myotubes, the assessment of redox status revealed that oxidized glutathione was increased under microgravity conditions, and simulated microgravity caused a burst of ROS, implicating ROS as a critical upstream mediator linking to downstream atrophic signaling. ROS generation activated the ERK1/2 early-growth response protein (Egr)1/2-Cbl-b signaling pathway, an established contributing pathway to muscle volume loss. Interestingly, antioxidant treatments such as N-acetylcysteine and TEMPOL, but not catalase, blocked the clinorotation-mediated activation of ERK1/2. The increased ROS induced transcriptional activity of Egr1 and/or Egr2 to stimulate Cbl-b expression through the ERK1/2 pathway in L6 myoblasts, since treatment with Egr1/2 siRNA and an ERK1/2 inhibitor significantly suppressed clinorotation-induced Cbl-b and Egr expression, respectively. Promoter and gel mobility shift assays revealed that Cbl-b was upregulated via an Egr consensus oxidative responsive element at -110 to - 60 bp of the Cbl-b promoter. Together, this indicates that under microgravity conditions, elevated ROS may be a crucial mechanotransducer in skeletal muscle cells, regulating muscle mass through Cbl-b expression activated by the ERK-Egr signaling pathway.

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